Microelectronics category: 225 books

Cover of Frontiers in Electronics

Frontiers in Electronics

Selected Papers from the Workshop on Frontiers in Electronics 2013 (WOFE-13)

by Sorin Cristoloveanu, Michael S Shur
Language: English
Release Date: December 15, 2014

This book brings together 11 invited papers from the Workshop on Frontiers in Electronics (WOFE) 2013 that took place at San Juan, Puerto Rico, in December 2013. These articles present the ground-breaking works by world leading experts from CMOS and SOI, to wide-bandgap semiconductor technology, terahertz...
Cover of Introduction to Microsystem Packaging Technology
by Yufeng Jin, Zhiping Wang, Jing Chen
Language: English
Release Date: December 19, 2017

The multi-billion-dollar microsystem packaging business continues to play an increasingly important technical role in today’s information industry. The packaging process—including design and manufacturing technologies—is the technical foundation upon which function chips are updated for use...
Cover of Nano and Molecular Electronics Handbook
by
Language: English
Release Date: October 3, 2018

There are fundamental and technological limits of conventional microfabrication and microelectronics. Scaling down conventional devices and attempts to develop novel topologies and architectures will soon be ineffective or unachievable at the device and system levels to ensure desired performance....
Cover of Frontiers in Electronics
by Sorin Cristoloveanu, Michael S Shur
Language: English
Release Date: May 21, 2013

Frontiers in Electronics is divided into four sections: advanced terahertz and photonics devices; silicon and germanium on insulator and advanced CMOS and MOSHFETs; nanomaterials and nanodevices; and wide band gap technology for high power and UV photonics. This book will be useful for nano-microelectronics...
Cover of Computational Electrodynamics

Computational Electrodynamics

A Gauge Approach with Applications in Microelectronics

by Wim Schoenmaker
Language: English
Release Date: June 5, 2017

Computational electrodynamics is a vast research field with a wide variety of tools. In physics, the principle of gauge invariance plays a pivotal role as a guide towards a sensible formulation of the laws of nature as well as for computing the properties of elementary particles using the lattice...
Cover of Optoelectronic Devices: III Nitrides
by Mohamed Henini, M Razeghi
Language: English
Release Date: December 17, 2004

Tremendous progress has been made in the last few years in the growth, doping and processing technologies of the wide bandgap semiconductors. As a result, this class of materials now holds significant promis for semiconductor electronics in a broad range of applications. The principal driver...
Cover of Micro Mechanical Systems

Micro Mechanical Systems

Principles and Technology

by
Language: English
Release Date: July 24, 1998

In ten sections this book describes the principles and technology of Micro Mechanical Systems. Section one is a general introduction to the historical background and the parallels to microelectronics, reviewing the motivation for microsystems, and discussing microphysics and design and the evolution...
Cover of Flexible Electronics

Flexible Electronics

From Materials to Devices

by Guozhen Shen, Zhiyong Fan
Language: English
Release Date: April 27, 2016

"Overall, the work is written at a level suitable for any individual with a reasonable familiarity of device physics and materials science. It will be useful to advanced undergraduate students who show an interest in the field. Also, this work will serve as a strong reference for those graduate...
Cover of Second Order Non-linear Optics of Silicon and Silicon Nanostructures
by O. A. Aktsipetrov, I. M. Baranova, K. N. Evtyukhov
Language: English
Release Date: March 29, 2016

The theory and practice of the non-linear optics of silicon are inextricably linked with a variety of areas of solid state physics, particularly semiconductor physics. However, the current literature linking these fields is scattered across various sources and is lacking in depth. Second Order Non-linear...
Cover of An Introduction to Quantum Transport in Semiconductors
by David K. Ferry
Language: English
Release Date: December 14, 2017

Throughout their college career, most engineering students have done problems and studies that are basically situated in the classical world. Some may have taken quantum mechanics as their chosen field of study. This book moves beyond the basics to highlight the full quantum mechanical nature of the...
Cover of Microprocessor Technology
by J S Anderson
Language: English
Release Date: August 21, 2012

'Microprocessor Technology' provides a complete introduction to the subject of microprocessor technology using the Z80 and 6502 processors. An emphasis on fault-finding and repair makes this an ideal text for servicing courses including City & Guilds 2240 in the UK, microelectronics units on BTEC...
Cover of Encapsulation Technologies for Electronic Applications
by Haleh Ardebili, Jiawei Zhang, Michael Pecht
Language: English
Release Date: October 23, 2018

Encapsulation Technologies for Electronic Applications, Second Edition, offers an updated, comprehensive discussion of encapsulants in electronic applications, with a primary emphasis on the encapsulation of microelectronic devices and connectors and transformers. It includes sections on 2-D and 3-D...
Cover of Towards a Modeling Synthesis of Two or Three-Dimensional Circuits Through Substrate Coupling and Interconnections: Noises and Parasites
by Christian Gontrand
Language: English
Release Date: April 21, 2014

The number of transistors in integrated circuits doubles every two years, as stipulated by Moore’s law, and this has been the driving force for the huge development of the microelectronics industry in the past 50 years currently advanced to the nanometric scale.This e-book is dedicated to electronic...
Cover of Semiconductor Transport
by David Ferry
Language: English
Release Date: August 12, 2016

The information revolution would have been radically different, or impossible, without the use of the materials known generically as semiconductors. The properties of these materials, particularly the potential for doping with impurities to create transistors and diodes and controlling the local potential...
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